On the Nature of the Formation of [(η5-Ind)Ru(CO)2H]: Evidence of a Water-Gas Shift Reaction Mechanism via Triethylamine Reduction
The formation of [(η5-Ind)Ru(CO)2H] from [(η5-Ind)Ru(CO)3]+ was investigated using both 1H and 2H NMR spectroscopy and GC−mass spectrometry. Both NMR and GC-MS data support a water-gas shift reaction mechanism as the cause for formation of [(η5-Ind)Ru(CO)2H].
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Veröffentlicht in: | Organometallics 2010-03, Vol.29 (5), p.1061-1063 |
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container_title | Organometallics |
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creator | Badger, Robert C D’Acchioli, Jason S Oudenhoven, Tracey A Walder, Brennan J |
description | The formation of [(η5-Ind)Ru(CO)2H] from [(η5-Ind)Ru(CO)3]+ was investigated using both 1H and 2H NMR spectroscopy and GC−mass spectrometry. Both NMR and GC-MS data support a water-gas shift reaction mechanism as the cause for formation of [(η5-Ind)Ru(CO)2H]. |
doi_str_mv | 10.1021/om9010774 |
format | Article |
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title | On the Nature of the Formation of [(η5-Ind)Ru(CO)2H]: Evidence of a Water-Gas Shift Reaction Mechanism via Triethylamine Reduction |
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